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Renewable Energy Technology Assessments - Kauai Island Utility ...

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Kaua’i <strong>Island</strong> <strong>Utility</strong> Cooperative<br />

<strong>Renewable</strong> <strong>Energy</strong> <strong>Technology</strong> <strong>Assessments</strong> 10.0 Landfill Gas<br />

LFG Generation (cfm)<br />

500<br />

450<br />

400<br />

350<br />

300<br />

250<br />

200<br />

150<br />

100<br />

50<br />

0<br />

SCS 2004<br />

B&V 2009<br />

1940 1950 1960 1970 1980 1990 2000 2010 2020 2030<br />

Figure 10-1. LFG Generation Estimates by Year.<br />

10.3 Project Option Screening<br />

Various uses can be envisioned for the LFG from Kekaha Landfill. The most<br />

conventional is combustion in an IC engine at the landfill for generation of electricity.<br />

Others include direct use of the gas for heating or displacement of fossil fuel<br />

consumption in a nearby, existing engine generator. These could be options in <strong>Kauai</strong>, but<br />

Black & Veatch is unaware of firm offtakers proposed for either. Only the IC engine<br />

option has been considered in this review.<br />

10.4 Project Technical Description<br />

Compared to many of the other renewable energy options, development of landfill<br />

gas projects is relatively straightforward. One of the more significant aspects will be<br />

development of gas collection facilities, which Kekaha does not currently have. The<br />

collection system consists of vertical gas wells, wellheads, blowers and gas cleanup<br />

equipment. Flares are also required for destruction of LFG during periods of engine<br />

outages. The Landfill is not currently required by law to have or install these collection<br />

facilities. The balance of the project consists of installing an engine generator and<br />

interconnecting the project to the electrical grid.<br />

21 March 2005 10-3 Black & Veatch

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